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T-DNA mutagenesis in Brachypodium distachyon

机译:短螺旋藻中的T-DNA诱变

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During the past decade, Brachypodium distachyon has emerged as an attractive experimental system and genomics model for grass research. Numerous molecular tools and genomics resources have already been developed. Functional genomics resources, including mutant collections, expression/tiling microarray, mapping populations, and genome re-sequencing for natural accessions, are rapidly being developed and made available to the community. In this article, the focus is on the current status of systematic T-DNA mutagenesis in Brachypodium. Large collections of T-DNA-tagged lines are being generated by a community of laboratories in the context of the International Brachypodium Tagging Consortium. To date, > 13 000 lines produced by the BrachyTAG programme and USDA-ARS Western Regional Research Center are available by online request. The utility of these mutant collections is illustrated with some examples from the BrachyTAG collection at the John Innes Centre-such as those in the eukaryotic initiation factor 4A (eIF4A) and brassinosteroid insensitive-1 (BRI1) genes. A series of other mutants exhibiting growth phenotypes is also presented. These examples highlight the value of Brachypodium as a model for grass functional genomics.
机译:在过去的十年中,短枝曲霉已经成为草类研究的有吸引力的实验系统和基因组学模型。已经开发了许多分子工具和基因组学资源。功能性基因组学资源,包括突变体收集,表达/平铺微阵列,作图种群和天然登录的基因组重测序,正在迅速开发并提供给社区。在本文中,重点是在腕足动物中系统性T-DNA诱变的当前状态。在国际腕足动物标签联盟的背景下,一个实验室社区正在收集大量带有T-DNA标签的品系。迄今为止,可以通过在线请求获得BrachyTAG计划和USDA-ARS西部区域研究中心生产的13000多条生产线。这些突变体集合的实用性在John Innes中心的BrachyTAG集合体中得到了一些例证,例如真核生物起始因子4A(eIF4A)和油菜素甾体不敏感1(BRI1)基因中的那些。还提出了一系列其他表现出生长表型的突变体。这些例子突出了腕足动物作为草功能基因组学模型的价值。

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